Anomalous Ferromagnetic Behavior in Orthorhombic LiCoSbO.

Inorg Chem

Neutron Science Platform, Songshan Lake Materials Laboratory, Dongguan, Guangdong 523808, China.

Published: July 2022

AI Article Synopsis

  • Monoclinic LiCoSbO has been studied as a potential candidate for a Kitaev spin liquid, while the magnetic properties of its less-explored orthorhombic phase have been investigated using various techniques like magnetic susceptibility, muon spin relaxation, and neutron diffraction.
  • The study observes multiple magnetic transitions occurring at temperatures of 115, 89, and 71 K, with higher external magnetic fields suppressing these transitions below 115 K.
  • Zero-field ac susceptibility measurements reveal additional transitions around 114, 107, 97, 79, and 71 K, and specific techniques confirm a long-range magnetic ordered state at roughly 115 K, with discrepancies attributed to stacking faults and local disarray

Article Abstract

Monoclinic LiCoSbO has been proposed as a Kitaev spin liquid candidate and investigated intensively, whereas the properties of its polymorph, the orthorhombic phase, are less known. Here we report the magnetic properties of orthorhombic LiCoSbO as revealed by dc and ac magnetic susceptibility, muon spin relaxation (μSR), and neutron diffraction measurements. Successive magnetic transitions at 115, 89, and 71 K were observed in the low-field dc susceptibility measurements. The transitions below (115 K) are suppressed at higher applied fields. However, zero-field ac susceptibility measurements reveal distinct frequency-independent transitions at about 114, 107, 97, 79, and 71 K. A long-range magnetic ordered state was confirmed by specific heat, μSR, and neutron diffraction measurements, all indicating a single transition at about 115 K. The discrepancy between different measurements is attributed to possible stacking faults and/or local disorders of the ferromagnetic zigzag chains, resulting in ferromagnetic boundaries within the overall antiferromagnetic matrix.

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Source
http://dx.doi.org/10.1021/acs.inorgchem.2c01293DOI Listing

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